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SHEAR-WAVE SPLITTING CRACK DENSITY MAPS FOR THE GEYSERS AND MAMMOTH

机译:剪切波分裂喷泉和猛犸象的裂纹密度图

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We have developed a method for mapping subsurface fracture density using the time differences of split shear waves from microearthquakes. In regions where a consistent direction of fracturing exists, shear waves from different source and receiver locations are systematically split into fast and slow components. The greater the fracture density, the greater the time differences between the fast and slow components for a given path length. Also, the greater the path length in the fractured rock, the greater the time difference. With a large number of spatially distributed sources and receivers, tomographic backprojection of the time differences can be used to map the distribution of fracture density. We have applied this method to 3 geothermal fields, the Geysers, Mammoth, and Coso. Our best example to date comes from Mammoth, where we recorded over 1/4 million source-receiver pairs, from which we extracted 1480 splitting times. Inversion of these times suggests the presence of zone of higher fracture density at depths of 1.5 to 2.5 km north and east of the Casa Diablo geothermal field.
机译:我们已经开发了一种使用微剪切波从微微拉伸的时间差异进行映射地下断裂密度的方法。在存在压裂的一致方向的区域中,来自不同源和接收器位置的剪切波被系统地分成快速和慢速组件。断裂密度越大,给定路径长度的快速和慢速部件之间的时间差异越大。而且,裂缝岩石中的路径长度越大,时间差越大。通过大量空间分布的源和接收器,可用于映射断裂密度的分布的时间差异的断层缩放。我们已将这种方法应用于3个地热领域,喷泉,猛犸象和COSO。我们迄今为止的最佳示例来自Mammoth,我们录制了超过1/4百万的源接收器对,从中提取了1480个分裂时间。这些时间的反演表明,在Casa暗黑破坏神地热场的北和东部的深度为1.5至2.5 km的深度,骨折密度的存在区域。

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